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We aim to understand how early changes in the endothelium and vascular wall are related to the initiation and development of vascular diseases, with a particular focus on nitric oxide signalling.
Diabetes, high cholesterol, smoking and high blood pressure are all associated with abnormalities in the function of the endothelium, the single-cell lining of blood vessels. Of particular significance are abnormalities in the action of nitric oxide (NO), one of several important molecules produced in the endothelium that help to maintain the health of the blood vessel wall. These abnormalities accelerate the processes that lead to vascular disease, including inflammation, thrombosis and atherosclerotic plaque formation.
Production of NO, by nitric oxide synthase enzymes, is highly regulated and depends on the co-factor tetrahydrobiopterin, which is made within endothelial cells. Once NO is produced, it interacts with molecular targets in the cell, but is rapidly inactivated by reactive oxygen species (ROS). Nitric oxide synthases can produce ROS as well as NO, the balance between the two determining the biological actions and pathological importance of these pathways.
Diabetes, high cholesterol, smoking and high blood pressure are all associated with abnormalities in the function of the endothelium, the single-cell lining of blood vessels. Of particular significance are abnormalities in the action of nitric oxide (NO), one of several important molecules produced in the endothelium that help to maintain the health of the blood vessel wall. These abnormalities accelerate the processes that lead to vascular disease, including inflammation, thrombosis and atherosclerotic plaque formation.
Production of NO, by nitric oxide synthase enzymes, is highly regulated and depends on the co-factor tetrahydrobiopterin, which is made within endothelial cells. Once NO is produced, it interacts with molecular targets in the cell, but is rapidly inactivated by reactive oxygen species (ROS). Nitric oxide synthases can produce ROS as well as NO, the balance between the two determining the biological actions and pathological importance of these pathways.
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JACC: Cardiovascular Imagingno. 7 (2024): 835-837
Jason Chai,Rafail Kotronias,Stefano Benenati,Miao Chu, Liam Couch,Federico Marin,Jeremy Langrish,Keith Channon,Adrian Banning, Giovanni De Maria
Acute coronary syndromes & interventional cardiology (2024)
Fardad Soltani,David A. Jenkins,Amit Kaura,Joshua Bradley,Nicholas Black,John P. Farrant,Simon G. Williams,Abdulrahim Mulla,Benjamin Glampson,Jim Davies,Dimitri Papadimitriou,Kerrie Woods,Anoop D. Shah,Mark R. Thursz,Bryan Williams,Folkert W. Asselbergs,Erik K. Mayer,Christopher Herbert,Stuart Grant,Nick Curzen,Iain Squire,Thomas Johnson,Kevin O’Gallagher,Ajay M. Shah,Divaka Perera,Rajesh Kharbanda,Riyaz S. Patel,Keith M. Channon, Richard Lee,Niels Peek,Jamil Mayet,Christopher A. Miller
BMC cardiovascular disordersno. 1 (2024): 343-343
OPEN HEARTno. 1 (2024)
Nathan A. Samuel,Alistair Roddick,Ben Glampson,Abdulrahim Mulla,Jim Davies,Dimitri Papadimitriou,Vasileios Panoulas,Erik Mayer,Kerrie Woods,Anoop D. Shah,Sanjay Gautama,Paul Elliott,Harry Hemmingway,Bryan Williams,Folkert W. Asselbergs,Narbeh Melikian,Rajesh Kharbanda,Ajay M. Shah,Divaka Perera,Riyaz S. Patel,Keith M. Channon,Jamil Mayet,Anoop S. V. Shah,Amit Kaura
European Heart Journalno. Supplement_2 (2022)
Philipp Starkl,Gustav Jonsson,Tyler Artner,Bruna Lenfers Turnes,Laura-Marie Gail,Tiago Oliveira,Aakanksha Jain,Nadine Serhan,Karel Stejskal,Karin Lakovits,Anastasiya Hladik,Meilin An,Keith M. Channon,Hail Kim,Thomas Koecher,Wolfgang Weninger,Georg Stary,Sylvia Knapp,Victoria Klang,Nicolas Gaudenzio,Clifford J. Woolf,Shweta Tikoo,Rohit Jain,Josef M. Penninger,Shane J. F. Cronin
SCIENCE IMMUNOLOGYno. 98 (2024)
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#Papers: 905
#Citation: 33192
H-Index: 91
G-Index: 150
Sociability: 8
Diversity: 4
Activity: 139
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